Recovering wetland biogeomorphic feedbacks to restore the world’s biotic carbon hotspots

Publication date

2022-05-06

Authors

Temmink, Ralph J.M.ORCID 0000-0001-9467-9875ISNI 000000050744973X
M., Lamers Leon P.
Christine, Angelini
J., Bouma Tjeerd
Christian, Fritz
Johan, van de Koppel
Robin, Lexmond
Rietkerk, MaxORCID 0000-0002-2698-3848ISNI 0000000047385244
R., Silliman Brian
Hans, Joosten

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

Abstract

Biogeomorphic wetlands cover 1% of Earth’s surface but store 20% of ecosystem organic carbon. This disproportional share is fueled by high carbon sequestration rates and effective storage in peatlands, mangroves, salt marshes, and seagrass meadows, which greatly exceed those of oceanic and forest ecosystems. Here, we review how feedbacks between geomorphology and landscape-building vegetation underlie these qualities and how feedback disruption can switch wetlands from carbon sinks into sources. Currently, human activities are driving rapid declines in the area of major carbon-storing wetlands (1% annually). Our findings highlight the urgency to stop through conservation ongoing losses and to reestablish landscape-forming feedbacks through restoration innovations that recover the role of biogeomorphic wetlands as the world’s biotic carbon hotspots.

Keywords

Citation

Temmink, R, M., L L P, Christine, A, J., B T, Christian, F, Johan, V D K, Robin, L, Max, R, R., S B, Hans, J & Tjisse, V D H 2022, 'Recovering wetland biogeomorphic feedbacks to restore the world’s biotic carbon hotspots', Science, vol. 376, no. 6593, eabn1479, pp. 1-7. https://doi.org/10.1126/science.abn1479